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A novel tetracycline-dependent transactivator with E2F4 transcriptional activation domain

机译:一种新型的四环素依赖性 具有E2F4转录激活域的反式激活子

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摘要

A tetracycline-controlled gene expression system provides a powerful tool to dissect the functions of gene products. However, it often appears difficult to establish cell lines or transgenic animals stably expressing tetracycline-dependent transactivators, possibly as a result of toxicity of the transactivator domains used. In order to overcome this problem, we developed a novel tetracycline-dependent transactivator that works efficiently in mammalian cells. This transactivator is a fusion of the tet reverse repressor mutant and the transcriptional activating domain of human E2F4, which is ubiquitously expressed in vivo. We demonstrate here that this tetracycline-regulated gene expression system provides a two log transcriptional activation in mammalian cells as assessed by northern blot and luciferase analyses. Combining this system with green fluorescent protein reporter systems or microarray gene expression profiling will facilitate the study of gene function.
机译:四环素控制的基因表达系统为剖析基因产物的功能提供了强大的工具。但是,建立稳定表达四环素依赖性反式激活因子的细胞系或转基因动物常常显得困难,这可能是由于所用反式激活因子域的毒性所致。为了克服这个问题,我们开发了一种新型的四环素依赖性反式激活因子,可在哺乳动物细胞中有效地发挥作用。该反式激活因子是tet反向阻遏物突变体与人E2F4转录激活域的融合体,后者在体内普遍表达。我们在这里证明了这种四环素调节的基因表达系统在哺乳动物细胞中提供了两个对数的转录激活,如通过Northern印迹和荧光素酶分析所评估的。将该系统与绿色荧光蛋白报告系统或微阵列基因表达谱相结合,将有助于基因功能的研究。

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